Sandbox k11v

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The entire 11-residue segment KVKVLGDVIEV forms a <scene name='77/771966/K11v_in_black/2'>hairpin loop</scene> in the 3D structure of ABC.The six residue segment GDVIEV ,termed <scene name='77/771966/Gdviev_black/1'>G6V</scene>,forms fibrils and microcrystals.The microcrystals enabled us to determine the atomic structure of G6V, which proved to be a standard class 2 steric zipper, essentially an amyloid-like protofilament.
The entire 11-residue segment KVKVLGDVIEV forms a <scene name='77/771966/K11v_in_black/2'>hairpin loop</scene> in the 3D structure of ABC.The six residue segment GDVIEV ,termed <scene name='77/771966/Gdviev_black/1'>G6V</scene>,forms fibrils and microcrystals.The microcrystals enabled us to determine the atomic structure of G6V, which proved to be a standard class 2 steric zipper, essentially an amyloid-like protofilament.
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Amyloid fibrils and oligomer are both formed by the hairpin segment KVKVLGDVIEV.K11V forms fibrils similar to those of protein(ABC) on shaking at elevated temperature and also similar to K11V^V2L(K11V-TR).The fibrils diameter range from 20 to 100 nm in electrom microscope.G6V,K11V,K11V-TR are all convertible to amyloid state,as is their parent protein ABC.Segment K11V,K11V-TR,and a sequence variant with Leu replacing Val at position 2(K11V^2L) forms stable oligomers intermediate in size between monomer and fiber.
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Amyloid fibrils and oligomer are both formed by the hairpin segment KVKVLGDVIEV.K11V forms fibrils similar to those of protein(ABC) on shaking at elevated temperature and also similar to K11V<sup>V2L</sup>(K11V-TR).The fibrils diameter range from 20 to 100 nm in electrom microscope.G6V,K11V,K11V-TR are all convertible to amyloid state,as is their parent protein ABC.Segment K11V,K11V-TR,and a sequence variant with Leu replacing Val at position 2(K11V<sup>2L</sup>) forms stable oligomers intermediate in size between monomer and fiber.
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K11V and K11V^V2L form hexameric oligomers.K11V oligomer is of 6 chains and K11V-TR oligomer of three tandem chains.Other than the glycine linkers and the Val-to-Leu replacement, the cylindrical bodies of the six stranded K11V and the three double stranded K11V-TR oligomers are essentially identical.
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K11V and K11V<sup>V2L</sup> form hexameric oligomers.K11V oligomer is of 6 chains and K11V-TR oligomer of three tandem chains.Other than the glycine linkers and the Val-to-Leu replacement, the cylindrical bodies of the six stranded K11V and the three double stranded K11V-TR oligomers are essentially identical.
The structure of K11V is a six-stranded antiparallel barrel of cylindrical in shape also called as cylindrin.Each strand of cylindrin is bonded to one neighbouring strand by a strong interface and to a second by a weak interface.The weak interface is formed by eight hydrogen bonds: four from the main chain, two mediated through side-chain interactions, and two through a water bridge.The strong interface is formed by 12 hydrogen bonds and spreads outward at the ends.
The structure of K11V is a six-stranded antiparallel barrel of cylindrical in shape also called as cylindrin.Each strand of cylindrin is bonded to one neighbouring strand by a strong interface and to a second by a weak interface.The weak interface is formed by eight hydrogen bonds: four from the main chain, two mediated through side-chain interactions, and two through a water bridge.The strong interface is formed by 12 hydrogen bonds and spreads outward at the ends.

Revision as of 15:58, 10 November 2017

Toxic Amyloid Small Oligomer’s atomic view

Structure of alpha-beta crystallin.PDB Id:3l1g

Drag the structure with the mouse to rotate

References

  1. Laganowsky A, Liu C, Sawaya MR, Whitelegge JP, Park J, Zhao M, Pensalfini A, Soriaga AB, Landau M, Teng PK, Cascio D, Glabe C, Eisenberg D. Atomic view of a toxic amyloid small oligomer. Science. 2012 Mar 9;335(6073):1228-31. PMID:22403391 doi:10.1126/science.1213151
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